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1. Non-autonomous stomatal control by pavement cell turgor via the K+ channel subunit AtKC1

2. Disruption of AtHAK / KT / KUP9 enhances plant cesium accumulation under low potassium supply

3. PHO1expression in guard cells mediates the stomatal response to abscisic acid in Arabidopsis

4. The Arabidopsis vacuolar anion transporter, AtCLCc, is involved in the regulation of stomatal movements and contributes to salt tolerance

5. AtHMA3, a P1B-ATPase Allowing Cd/Zn/Co/Pb Vacuolar Storage in Arabidopsis

6. Constitutive activation of a plasma membrane H+-ATPase prevents abscisic acid-mediated stomatal closure

7. Transport of antimony salts byArabidopsis thalianaprotoplasts over-expressing the human multidrug resistance-associated protein 1 (MRP1/ABCC1)

8. Molecular characterization of three Arabidopsis soluble ABC proteins which expression is induced by sugars

9. Heavy metal toxicity: cadmium permeates through calcium channels and disturbs the plant water status

10. Involvement of RD20, a member of caleosin family, in ABA-mediated regulation of germination inArabidopsis thaliana

11. Modulation of Zn/Cd P(1B2)-ATPase activities in Arabidopsis impacts differently on Zn and Cd contents in shoots and seeds

12. Acetylated 1,3-diaminopropane antagonizes abscisic acid-mediated stomatal closing in Arabidopsis

13. Uranium perturbs signaling and iron uptake response in Arabidopsis thaliana roots

14. The ABI1 and ABI2 protein phosphatases 2C act in a negative feedback regulatory loop of the abscisic acid signalling pathway

15. Arabidopsis Contains at Least Four Independent Blue-Light-Activated Signal Transduction Pathways1

16. Developmental Priming of Stomatal Sensitivity to Abscisic Acid by Leaf Microclimate

17. $PHO1$ expression in guard cells mediates the stomatal response to abscisic acid in Arabidopsis

18. Zn/Cd/Co/Pb P1b-ATPases in Plants, Physiological Roles and Biological Interest

19. RD20, a stress-inducible caleosin, participates in stomatal control, transpiration and drought tolerance in Arabidopsis thaliana

20. A common highly conserved cadmium detoxification mechanism from bacteria to humans: heavy metal tolerance conferred by the ATP-binding cassette (ABC) transporter SpHMT1 requires glutathione but not metal-chelating phytochelatin peptides

21. AtMRP6/AtABCC6, an ATP-binding cassette transporter gene expressed during early steps of seedling development and up-regulated by cadmium in Arabidopsis thaliana

22. Plant adaptation to fluctuating environment and biomass production are strongly dependent on guard cell potassium channels

23. Genome-wide transcriptome profiling of the early cadmium response of Arabidopsis roots and shoots

24. Hydrogen peroxide production is an early event during bicarbonate induced stomatal closure in abaxial epidermis of Arabidopsis

25. Identification of features regulating OST1 kinase activity and OST1 function in guard cells

26. HMA1, a new Cu-ATPase of the chloroplast envelope, is essential for growth under adverse light conditions

27. Heavy metal transport by AtHMA4 involves the N-terminal degenerated metal binding domain and the C-terminal His11 stretch

28. Overexpression of AtHMA4 enhances root-to-shoot translocation of zinc and cadmium and plant metal tolerance

29. AtHMA3, a plant P1B-ATPase, functions as a Cd/Pb transporter in yeast

30. The Arabidopsis outward K+ channel GORK is involved in regulation of stomatal movements and plant transpiration

31. Arabidopsis OST1 protein kinase mediates the regulation of stomatal aperture by abscisic acid and acts upstream of reactive oxygen species production

32. Use of infrared thermal imaging to isolate Arabidopsis mutants defective in stomatal regulation

33. Pharmacological properties of slow anion currents in intact guard cells of Arabidopsis. Application of the discontinuous single-electrode voltage-clamp to different species

34. Cloning of AtMRP1, an Arabidopsis thaliana cDNA encoding a homologue of the mammalian multidrug resistance-associated protein

35. A Guard-Cell-Specific MYB Transcription Factor Regulates Stomatal Movements and Plant Drought Tolerance

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